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Carbon-doped BN nanosheets for metal-free photoredox catalysis

机译:碳掺杂BN纳米片用于无金属的光氧化还原催化

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The generation of sustainable and stable semiconductors for solar energy conversion by photoredox catalysis, for example, light-induced water splitting and carbon dioxide reduction, is a key challenge of modern materials chemistry. Here we present a simple synthesis of a ternary semiconductor, boron carbon nitride, and show that it can catalyse hydrogen or oxygen evolution from water as well as carbon dioxide reduction under visible light illumination. The ternary B–C–N alloy features a delocalized two-dimensional electron system with sp 2 carbon incorporated in the h -BN lattice where the bandgap can be adjusted by the amount of incorporated carbon to produce unique functions. Such sustainable photocatalysts made of lightweight elements facilitate the innovative construction of photoredox cascades to utilize solar energy for chemical conversion.
机译:通过光氧化还原催化(例如光诱导的水分解和二氧化碳的还原)产生可持续和稳定的用于太阳能转化的半导体是现代材料化学的关键挑战。在这里,我们提出了一种三元半导体氮化硼碳的简单合成方法,并表明它可以催化水中的氢或氧释放以及可见光下的二氧化碳还原。三元B–C–N合金具有离域二维电子系统,其中在h -BN晶格中掺入了sp 2 碳,其中带隙可以通过掺入的碳量进行调节以产生独特的功能。这种由轻质元素制成的可持续性光催化剂促进了光氧化还原级联的创新构造,以利用太阳能进行化学转化。

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